A New Class of Low-Loss High-Linearity Electronically Reconfigurable Microwave Filter
A novel electronically reconfigurable microwave bandpass filter based on a switched delay-line approach is presented. In contrast to conventional tunable filters, the approach enables the lossy and nonlinear switching elements to be used as part of the coupling elements rather than within the resona...
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my.utp.eprints.13962017-01-19T08:26:11Z A New Class of Low-Loss High-Linearity Electronically Reconfigurable Microwave Filter Wong, Peng Wen T Technology (General) A novel electronically reconfigurable microwave bandpass filter based on a switched delay-line approach is presented. In contrast to conventional tunable filters, the approach enables the lossy and nonlinear switching elements to be used as part of the coupling elements rather than within the resonators. Therefore, the filter distinguishes itself through its ability to provide a wide tuning bandwidth with low passband loss and high linearity. Theoretical analysis of the approach is presented in this paper. The feasibility of the approach has been experimentally verified with microstrip circuit prototypes. The filter produced a maximum passband loss of 1.7 dB and a third-order intercept point of >32 dBm with 35% tuning bandwidth. IEEE 2008-08 Article PeerReviewed application/pdf http://eprints.utp.edu.my/1396/1/A_New_Class_of_Low-Loss_High-Linearity_Electronically_Reconfigurable_Microwave_Filter.pdf Wong, Peng Wen (2008) A New Class of Low-Loss High-Linearity Electronically Reconfigurable Microwave Filter. Microwave Theory and Techniques, IEEE Transactions , 56 (8). pp. 1945-1953. ISSN 0018-9480 http://eprints.utp.edu.my/1396/ |
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T Technology (General) Wong, Peng Wen A New Class of Low-Loss High-Linearity Electronically Reconfigurable Microwave Filter |
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A novel electronically reconfigurable microwave bandpass filter based on a switched delay-line approach is presented. In contrast to conventional tunable filters, the approach enables the lossy and nonlinear switching elements to be used as part of the coupling elements rather than within the resonators. Therefore, the filter distinguishes itself through its ability to provide a wide tuning bandwidth with low passband loss and high linearity. Theoretical analysis of the approach is presented in this paper. The feasibility of the approach has been experimentally verified with microstrip circuit prototypes. The filter produced a maximum passband loss of 1.7 dB and a third-order intercept point of >32 dBm with 35% tuning bandwidth.
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format |
Article |
author |
Wong, Peng Wen |
author_facet |
Wong, Peng Wen |
author_sort |
Wong, Peng Wen |
title |
A New Class of Low-Loss High-Linearity Electronically Reconfigurable Microwave Filter |
title_short |
A New Class of Low-Loss High-Linearity Electronically Reconfigurable Microwave Filter |
title_full |
A New Class of Low-Loss High-Linearity Electronically Reconfigurable Microwave Filter |
title_fullStr |
A New Class of Low-Loss High-Linearity Electronically Reconfigurable Microwave Filter |
title_full_unstemmed |
A New Class of Low-Loss High-Linearity Electronically Reconfigurable Microwave Filter |
title_sort |
new class of low-loss high-linearity electronically reconfigurable microwave filter |
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IEEE |
publishDate |
2008 |
url |
http://eprints.utp.edu.my/1396/1/A_New_Class_of_Low-Loss_High-Linearity_Electronically_Reconfigurable_Microwave_Filter.pdf http://eprints.utp.edu.my/1396/ |
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